IP Library Granted Patent US 11,658,716
Granted Patent B2
US 11,658,716 · App. 16/910,291 · Granted May 23, 2023

Wireless communication system based on mmWave RF repeaters

Inventor: Alireza Tarighat Mehrabani (Los Angeles, CA)
Assignee: AR & NS Investment, LLC
H04B7/0617H04B7/0695H04B7/10H04B7/15521H04B17/12H04W72/0453H04B3/36
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Quick Facts
Patent No.
US 11,658,716
App. No.
16/910,291
Granted
May 23, 2023
Kind
B2
Abstract

A wireless communication system based on millimeter wave (mmWave) radio frequency (RF) repeaters includes a first communication device. The first communication device includes a digital signal processor configured to provide access to a first type of communication network to a plurality of communication systems that are communicatively coupled to the first communication device via a plurality of different type of wireless networks. A plurality of radio frequency (RF) signals corresponding to different communication protocols is obtained via the plurality of different type of wireless networks. The obtained plurality of RF signals corresponding to different communication protocols are merged into a mmWave RF signal of a specified frequency. The mmWave RF signal of the specified frequency is transmitted to a second communication device.

Claims (38)

1. A wireless communication system, comprising:

a first communication device that comprises a digital signal processor, wherein the digital signal processor is configured to:

provide access to a first type of communication network to a plurality of communication systems, wherein each of the plurality of communication systems is communicatively coupled to the first communication device via a plurality of different type of wireless networks;

obtain a plurality of radio frequency (RF) signals corresponding to different communication protocols from the plurality of communication systems via the plurality of different type of wireless networks, wherein each communication system is associated with a corresponding communication protocol of the different communication protocols;

merge the obtained plurality of RF signals corresponding to different communication protocols into a mmWave RF signal of a specified frequency; and

transmit the mmWave RF signal of the specified frequency to a second communication device.

2. The wireless communication system according to claim 1 , wherein the digital signal processor is further configured to upconvert a frequency of each of the plurality of RF signals to a different frequency for the merge into the mmWave RF signal.

3. The wireless communication system according to claim 1 , wherein the digital signal processor is further configured to map and align the plurality of RF signals corresponding to different communication protocols in the mmWave RF signal in accordance to a number of source antennas from which the plurality of RF signals are obtained.

4. The wireless communication system according to claim 1 , wherein the digital signal processor is further configured to provide the mmWave RF signal of the specified frequency to a plurality of second communication devices in a chain transmission or a parallel transmission, wherein each second communication device of the plurality of second communication devices is configured to extract, from the mmWave RF signal, at least one of the merged plurality of RF signals.

5. The wireless communication system according to claim 1 , wherein each of the plurality of RF signals communicated over a corresponding type of wireless network of the plurality of different type of wireless networks has a defined communication range, wherein a coverage of the plurality of RF signals corresponding to the different communication protocols is extended beyond the defined communication range based on the transmit of the mmWave RF signal of the specified frequency that includes the plurality of RF signals.

6. The wireless communication system according to claim 1 , wherein the first communication device and the second communication device is one of: a fifth generation (5G) modem, a 5G wireless access point, a multiprotocol wireless range extender device, an evolved-universal terrestrial radio access-new radio (NR) dual connectivity (EN-DC) device, a NR-enabled relay node, a NR-enabled repeater device, a wireless local area network-enabled device, a wireless personal area network-enabled device, a mmWave-enabled device, or a 60 gigahertz (GHz) capable device.

7. The wireless communication system according to claim 1 , wherein the plurality of different type of wireless networks correspond to a Wireless-Fidelity (Wi-Fi) network, a Bluetooth network, a Bluetooth low energy (BLE) network, a Zigbee network, a cellular network, an infrared communication network, a radio frequency for consumer electronics (RF4CE) network, a wireless sensor network, or an Internet-of-Things network.

8. The wireless communication system according to claim 1 , wherein the different communication protocols correspond to a Wireless-Fidelity (Wi-Fi) protocol, a Bluetooth Protocol, a Bluetooth low energy (BLE) protocol, a Zigbee protocol, a cellular communication protocol, an infrared communication protocol, a radio frequency for consumer electronics (RF4CE) protocol, a wireless sensor network protocol, or different variations of wireless wide area network (WWAN), wireless local area network (WLAN), or wireless personal area network (WPAN) protocols.

9. The wireless communication system according to claim 1 , wherein the specified frequency of the mmWave RF signal is in the range of 10 gigahertz (GHz) to 300 GHz.

10. The wireless communication system according to claim 1 , wherein the specified frequency of the mmWave RF signal is in the range of 55 gigahertz (GHz) to 65 GHz.

11. The wireless communication system according to claim 1 , wherein the specified frequency of the mmWave RF signal is 60 gigahertz (GHz).

12. The wireless communication system according to claim 1 , wherein the obtained plurality of RF signals corresponding to different communication protocols are multiplexed into the mmWave RF signal of the specified frequency.

13. A wireless communication system, comprising:

a first communication device and a second communication device, wherein the first communication device comprises a first digital signal processor that is configured to:

obtain a plurality of radio frequency (RF) signals corresponding to different communication protocols from a plurality of communication systems, wherein each of the plurality of communication systems is communicatively coupled to the first communication device via a plurality of different type of wireless networks, wherein each communication system is associated with a corresponding communication protocol of the different communication protocols;

merge the obtained plurality of RF signals corresponding to different communication protocols into a mmWave RF signal of a specified frequency; and

transmit the mmWave RF signal of the specified frequency to the second communication device,

wherein the second communication device comprises a second digital signal processor that is configured to extract, from the transmitted mmWave RF signal, a wireless wide area network signal, a wireless local area network signal, a wireless personal area network signal, or a combination thereof that corresponds to the plurality of RF signals.

14. A wireless communication method, comprising:

in a first communication device that comprises a digital signal processor:

providing, by the digital signal processor, access to a first type of communication network to a plurality of communication systems, wherein each of the plurality of communication systems is communicatively coupled to the first communication device via a plurality of different type of wireless networks;

obtaining, by the digital signal processor, a plurality of radio frequency (RF) signals corresponding to different communication protocols from the plurality of communication systems via the plurality of different type of wireless networks, wherein each communication system is associated with a corresponding communication protocol of the different communication protocols;

merging, by the digital signal processor, the obtained plurality of RF signals corresponding to different communication protocols into a mmWave RF signal of a specified frequency; and

transmitting, by the digital signal processor, the mmWave RF signal of the specified frequency to a second communication device.

15. The method according to claim 14 , further comprising upconverting a frequency of each of the plurality of RF signals to a different frequency to cause the merge into the mmWave RF signal.

16. The method according to claim 14 , further comprising mapping and aligning the plurality of RF signals corresponding to different communication protocols in the mmWave RF signal in accordance to a number of source antennas from which the plurality of RF signals are obtained.

17. The method according to claim 14 , further comprising providing the mmWave RF signal of the specified frequency to a plurality of second communication devices in a chain transmission or a parallel transmission, wherein each second communication device of the plurality of second communication devices is configured to extract, from the mmWave RF signal, at least one of the merged plurality of RF signals.

18. The method according to claim 14 , wherein each of the plurality of RF signals communicated over a corresponding type of wireless network of the plurality of different type of wireless networks has a defined communication range, wherein a coverage of the plurality of RF signals corresponding to the different communication protocols is extended beyond the defined communication range based on the transmit of the mmWave RF signal of the specified frequency that includes the plurality of RF signals.

19. A non-transitory computer-readable medium having stored thereon, computer implemented instructions, which when executed by a processor in a communication apparatus, causes the communication apparatus to execute operations, the operations comprising:

providing, by a first communication device, access to a first type of communication network to a plurality of communication systems, wherein each of the plurality of communication systems is communicatively coupled to the first communication device via a plurality of different type of wireless networks;

obtaining a plurality of radio frequency (RF) signals corresponding to different communication protocols from the plurality of communication systems via the plurality of different type of wireless networks, wherein each communication system is associated with a corresponding communication protocol of the different communication protocols;

merging the obtained plurality of RF signals corresponding to different communication protocols into a mmWave RF signal of a specified frequency; and

transmitting the mmWave RF signal of the specified frequency to a second communication device.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 28, 2024
From: AR & NS INVESTMENTS, LLC
To: PELTBEAM, I NC
Reel/Frame 069045/0304 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2020
From: TARIGHAT MEHRABANI, ALIREZA
To: AR & NS INVESTMENT, LLC
Reel/Frame 053024/0379 →
Continuity (1)
Related Publication 20210409102A1 · Dec 30, 2021